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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Shear-horizontal surface waves on piezoelectric ceramics with depolarized surface layer
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Shear-horizontal surface waves on piezoelectric ceramics with depolarized surface layer

机译:具有去极化表面层的压电陶瓷上的水平剪切表面波

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摘要

Theoretical analysis and numerical results describing the propagation of SH (shear-horizontal) surface waves on piezoelectric ceramics with a depolarized surface layer are described. SH surface waves propagating in piezoelectric ceramics with a depolarized surface layer are shown to be a mixture of the Bleustein-Gulyaev surface wave, electrical potential, and the Love surface-wave mechanical displacement. Depolarization of the surface layer in piezoelectric ceramics produces strong dispersion and a multimode structure of the SH surface wave. The penetration depth of the SH surface waves propagating on an electrically free surface of a piezoelectric ceramic with a depolarized surface layer can be significantly smaller than that of the Bleustein-Gulyaev surface waves propagating on a free piezoelectric half-space. It is concluded that piezoelectric ceramics with a depolarized surface layer can be used in hybrid piezoelectric semiconductor convolvers of reduced size.
机译:描述了理论分析和数值结果,描述了SH(剪切-水平)表面波在具有去极化表面层的压电陶瓷上的传播。在具有去极化表面层的压电陶瓷中传播的SH表面波被证明是Bleustein-Gulyaev表面波,电势和Love表面波机械位移的混合物。压电陶瓷中的表面层去极化会产生强烈的色散和SH表面波的多模结构。在具有去极化表面层的压电陶瓷的电自由表面上传播的SH表面波的穿透深度可以明显小于在自由压电半空间上传播的Bleustein-Gulyaev表面波的穿透深度。结论是具有去极化表面层的压电陶瓷可用于尺寸减小的混合压电半导体卷积器中。

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